Tracey Young-Sharma , Courtney R. Lane , Rodney James , Mathilda Wilmot , Sanjeshni Autar , Kylie Hui , Aneley Getahun Strobel , Jake A. Lacey , Savneel Kumar , Ashlyn Datt , Alvina Lata , Donna Cameron , Norelle L. Sherry , Sisilia Genaro , Timaima Ditukana , Ilisapeci Nabose , Apaitia Goneyali , Elizabeth Bennett , Anisi Kavoa , Shammi Prasad , Benjamin P. Howden
{"title":"斐济多物种耐碳青霉烯类生物爆发的成功管理:前瞻性基因组学强化调查和应对措施","authors":"Tracey Young-Sharma , Courtney R. Lane , Rodney James , Mathilda Wilmot , Sanjeshni Autar , Kylie Hui , Aneley Getahun Strobel , Jake A. Lacey , Savneel Kumar , Ashlyn Datt , Alvina Lata , Donna Cameron , Norelle L. Sherry , Sisilia Genaro , Timaima Ditukana , Ilisapeci Nabose , Apaitia Goneyali , Elizabeth Bennett , Anisi Kavoa , Shammi Prasad , Benjamin P. Howden","doi":"10.1016/j.lanwpc.2024.101234","DOIUrl":null,"url":null,"abstract":"<div><h3>Background</h3><div>Fiji is a Pacific Island nation grappling with the increasing threat of antimicrobial resistance (AMR). While genomic technologies are increasingly utilised to understand the emergence and spread of AMR globally, its application to inform outbreak responses in low- and middle-income settings has not been reported.</div></div><div><h3>Methods</h3><div>Through an established capacity building program, suspected carbapenem-resistant organisms (CRO) identified at Colonial War Memorial Hospital in Fiji (Jan 2022–Oct 2023) underwent whole genome sequencing and analysis. Following a rapid increase in CROs, a joint outbreak investigation including detailed genomic epidemiology was undertaken. A multi-modal response was co-designed and implemented by hospital staff, and circulating strains monitored to assess impact.</div></div><div><h3>Findings</h3><div>Six large genomic clusters accounted for 73% (n = 223/304) of all sequenced CRO isolates. Four genomic clusters (<em>Acinetobacter baumannii</em> NDM-1, <em>A. baumannii</em> OXA-23/OXA-58<em>, Escherichia coli</em> NDM-7, <em>Pseudomonas aeruginosa</em> NDM-1) were investigated in detail, with affected wards differing between species. Following outbreak interventions, <em>E. coli</em> and <em>P. aeruginosa</em> clusters decreased rapidly, however <em>A. baumannii</em> transmission persisted. Repeated international importation of CROs into Fiji were suspected.</div></div><div><h3>Interpretation</h3><div>Carbapenem-resistant pathogens pose a major threat to the health system in Fiji. Genomics technologies are useful for understanding AMR and guiding successful response, in these settings. Strategies to ensure access to, and judicious use of the technology are justified.</div></div><div><h3>Funding</h3><div>This work was funded by the <span>Australian Government</span> through the <span>Department of Foreign Affairs and Trade Centre for Health Security</span>, <span>Medical Research Future Fund</span> and <span>National Health and Medical Research Council</span>.</div></div>","PeriodicalId":22792,"journal":{"name":"The Lancet Regional Health: Western Pacific","volume":"53 ","pages":"Article 101234"},"PeriodicalIF":7.6000,"publicationDate":"2024-11-20","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Successful management of a multi-species outbreak of carbapenem-resistant organisms in Fiji: a prospective genomics-enhanced investigation and response\",\"authors\":\"Tracey Young-Sharma , Courtney R. Lane , Rodney James , Mathilda Wilmot , Sanjeshni Autar , Kylie Hui , Aneley Getahun Strobel , Jake A. Lacey , Savneel Kumar , Ashlyn Datt , Alvina Lata , Donna Cameron , Norelle L. Sherry , Sisilia Genaro , Timaima Ditukana , Ilisapeci Nabose , Apaitia Goneyali , Elizabeth Bennett , Anisi Kavoa , Shammi Prasad , Benjamin P. Howden\",\"doi\":\"10.1016/j.lanwpc.2024.101234\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div><h3>Background</h3><div>Fiji is a Pacific Island nation grappling with the increasing threat of antimicrobial resistance (AMR). While genomic technologies are increasingly utilised to understand the emergence and spread of AMR globally, its application to inform outbreak responses in low- and middle-income settings has not been reported.</div></div><div><h3>Methods</h3><div>Through an established capacity building program, suspected carbapenem-resistant organisms (CRO) identified at Colonial War Memorial Hospital in Fiji (Jan 2022–Oct 2023) underwent whole genome sequencing and analysis. Following a rapid increase in CROs, a joint outbreak investigation including detailed genomic epidemiology was undertaken. A multi-modal response was co-designed and implemented by hospital staff, and circulating strains monitored to assess impact.</div></div><div><h3>Findings</h3><div>Six large genomic clusters accounted for 73% (n = 223/304) of all sequenced CRO isolates. Four genomic clusters (<em>Acinetobacter baumannii</em> NDM-1, <em>A. baumannii</em> OXA-23/OXA-58<em>, Escherichia coli</em> NDM-7, <em>Pseudomonas aeruginosa</em> NDM-1) were investigated in detail, with affected wards differing between species. Following outbreak interventions, <em>E. coli</em> and <em>P. aeruginosa</em> clusters decreased rapidly, however <em>A. baumannii</em> transmission persisted. Repeated international importation of CROs into Fiji were suspected.</div></div><div><h3>Interpretation</h3><div>Carbapenem-resistant pathogens pose a major threat to the health system in Fiji. Genomics technologies are useful for understanding AMR and guiding successful response, in these settings. 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Successful management of a multi-species outbreak of carbapenem-resistant organisms in Fiji: a prospective genomics-enhanced investigation and response
Background
Fiji is a Pacific Island nation grappling with the increasing threat of antimicrobial resistance (AMR). While genomic technologies are increasingly utilised to understand the emergence and spread of AMR globally, its application to inform outbreak responses in low- and middle-income settings has not been reported.
Methods
Through an established capacity building program, suspected carbapenem-resistant organisms (CRO) identified at Colonial War Memorial Hospital in Fiji (Jan 2022–Oct 2023) underwent whole genome sequencing and analysis. Following a rapid increase in CROs, a joint outbreak investigation including detailed genomic epidemiology was undertaken. A multi-modal response was co-designed and implemented by hospital staff, and circulating strains monitored to assess impact.
Findings
Six large genomic clusters accounted for 73% (n = 223/304) of all sequenced CRO isolates. Four genomic clusters (Acinetobacter baumannii NDM-1, A. baumannii OXA-23/OXA-58, Escherichia coli NDM-7, Pseudomonas aeruginosa NDM-1) were investigated in detail, with affected wards differing between species. Following outbreak interventions, E. coli and P. aeruginosa clusters decreased rapidly, however A. baumannii transmission persisted. Repeated international importation of CROs into Fiji were suspected.
Interpretation
Carbapenem-resistant pathogens pose a major threat to the health system in Fiji. Genomics technologies are useful for understanding AMR and guiding successful response, in these settings. Strategies to ensure access to, and judicious use of the technology are justified.
Funding
This work was funded by the Australian Government through the Department of Foreign Affairs and Trade Centre for Health Security, Medical Research Future Fund and National Health and Medical Research Council.
期刊介绍:
The Lancet Regional Health – Western Pacific, a gold open access journal, is an integral part of The Lancet's global initiative advocating for healthcare quality and access worldwide. It aims to advance clinical practice and health policy in the Western Pacific region, contributing to enhanced health outcomes. The journal publishes high-quality original research shedding light on clinical practice and health policy in the region. It also includes reviews, commentaries, and opinion pieces covering diverse regional health topics, such as infectious diseases, non-communicable diseases, child and adolescent health, maternal and reproductive health, aging health, mental health, the health workforce and systems, and health policy.